1.Expression of CD44s in lung cancer and its significance
Xiaomei WANG ; Zhiqiang CHENG ; Ling WANG ; Xuejin SU ; Zhuohuai CHEN
Chinese Journal of Pathophysiology 2000;0(08):-
AIM: To investigate expression of CD44s in lung cancer and it's clinical significance. METHODS: A total of 117 primary lung cancer from patients were examined for CD44s expression by immunohistochemical staining. RESULTS: CD44s mostly expressed in non-small cell lung cancer (NSCLC) but not in small ecll lung cancer (SCLC), and squamous cell carcinoma(SCC) showed much stronger expression of CD44s than adenocarcinoma(ADC)(P
2.Influence of Width and Thickness of DCI's Curved Section on Its Performance.
Jia BAI ; Tao WANG ; Xuejin CHENG ; Lei WU ; Xiangjun HU
Chinese Journal of Medical Instrumentation 2016;40(1):10-12
By establishing a series of Dynamic Cervical Implants (DCI) within C5-C6 cervical spinal segments, the biomechanical finite element analysis for DCI with different width and thickness were carried out to investigate the influence of the width and thickness of DCI's curved section on its equivalent stress and range of motion (ROM), so as to provide some theoretical basis for the optimization of DCI's design. The results show that the width of DCI's curved section has more obvious influence on the ROM of lateral bending and torsion, in comparison with the thickness of DCI's curved section. By appropriate reduction in width, the ROMs of lateral bending and torsion increase obviously, i.e. the overall movement function of patients is improved. Furthermore, the increase of equivalent stress could be counteracted by corresponding increase of thickness.
Biomechanical Phenomena
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Cervical Vertebrae
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Finite Element Analysis
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Humans
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Movement
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Neck
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Prostheses and Implants
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Prosthesis Design
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Range of Motion, Articular
3.Study on temperature control of blood specimens in transportation
Benhui QIU ; Dongyan YANG ; Xiaojiao CHENG ; Xuejin LIAO ; Daiquan XIA
International Journal of Laboratory Medicine 2017;38(1):10-12,15
Objective To discuss the selection of conveyance and the temperature safeguards during the transport of blood specimens for centralized nucleic acid detection.Methods A total of five chips,which have been set every 10 minuets to record the temperature,have been placed in the Specimen box accordance with the appendix B ofblood transport requirements (WS/T 400-2012).Then,observe the temperature changes in case of ice been placed on both sides,sides and top,sides and bottom,sides and top,bottom of the specimen box respectively.Results In case of ice been placed on both sides of the specimen box,the temperatures were always higher than 10 ℃.In case of ice been placed on both sides and the top of the specimen box,the temperatures were all in range of 2-10 ℃ within 13 hours.In case of ice been placed on both sides and the bottom of the specimen box,only the temperatures of the top were always higher than 10℃.In case of ice been placed on both sides,top and bottom of the box,the temperatures of the bottom were always lower than 2 ℃.Conclusion In case of ice been placed on both sides and top of the box was the most appropriate temperature safeguards during the transport of blood specimens,while in the other cases,the temperatures were lower than 2 ℃,or higher than 10 ℃.